Whole genome scanning and association mapping identified a significant association between growth and a SNP in the IFABP-a gene of the Asian seabass
10.1186/1471-2164-14-295
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sg-nus-scholar.10635-1744472024-11-14T05:50:32Z Whole genome scanning and association mapping identified a significant association between growth and a SNP in the IFABP-a gene of the Asian seabass Xia J.H. Lin G. He X. Liu P. Liu F. Sun F. Tu R. Yue G.H. DEAN'S OFFICE (MEDICINE) TEMASEK LABORATORIES BIOLOGICAL SCIENCES aquaculture article Asian sea bass association mapping body weight cloning developmental stage exon familia fish gene gene function genome analysis growth hatching IFABP a gene microsatellite marker nonhuman nucleotide sequence phenotypic variation quantitative trait locus quantitative trait locus mapping single nucleotide polymorphism Animals Bass Fasting Fatty Acid-Binding Proteins Female Genetic Linkage Genome Male Microsatellite Repeats Phenotype Polymorphism, Single Nucleotide Quantitative Trait Loci 10.1186/1471-2164-14-295 BMC Genomics 14 1 295 2020-09-04T06:35:41Z 2020-09-04T06:35:41Z 2013 Article Xia J.H., Lin G., He X., Liu P., Liu F., Sun F., Tu R., Yue G.H. (2013). Whole genome scanning and association mapping identified a significant association between growth and a SNP in the IFABP-a gene of the Asian seabass. BMC Genomics 14 (1) : 295. ScholarBank@NUS Repository. https://doi.org/10.1186/1471-2164-14-295 14712164 https://scholarbank.nus.edu.sg/handle/10635/174447 BioMed Central Unpaywall 20200831 |
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aquaculture article Asian sea bass association mapping body weight cloning developmental stage exon familia fish gene gene function genome analysis growth hatching IFABP a gene microsatellite marker nonhuman nucleotide sequence phenotypic variation quantitative trait locus quantitative trait locus mapping single nucleotide polymorphism Animals Bass Fasting Fatty Acid-Binding Proteins Female Genetic Linkage Genome Male Microsatellite Repeats Phenotype Polymorphism, Single Nucleotide Quantitative Trait Loci |
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aquaculture article Asian sea bass association mapping body weight cloning developmental stage exon familia fish gene gene function genome analysis growth hatching IFABP a gene microsatellite marker nonhuman nucleotide sequence phenotypic variation quantitative trait locus quantitative trait locus mapping single nucleotide polymorphism Animals Bass Fasting Fatty Acid-Binding Proteins Female Genetic Linkage Genome Male Microsatellite Repeats Phenotype Polymorphism, Single Nucleotide Quantitative Trait Loci Xia J.H. Lin G. He X. Liu P. Liu F. Sun F. Tu R. Yue G.H. Whole genome scanning and association mapping identified a significant association between growth and a SNP in the IFABP-a gene of the Asian seabass |
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10.1186/1471-2164-14-295 |
author2 |
DEAN'S OFFICE (MEDICINE) |
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DEAN'S OFFICE (MEDICINE) Xia J.H. Lin G. He X. Liu P. Liu F. Sun F. Tu R. Yue G.H. |
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Article |
author |
Xia J.H. Lin G. He X. Liu P. Liu F. Sun F. Tu R. Yue G.H. |
author_sort |
Xia J.H. |
title |
Whole genome scanning and association mapping identified a significant association between growth and a SNP in the IFABP-a gene of the Asian seabass |
title_short |
Whole genome scanning and association mapping identified a significant association between growth and a SNP in the IFABP-a gene of the Asian seabass |
title_full |
Whole genome scanning and association mapping identified a significant association between growth and a SNP in the IFABP-a gene of the Asian seabass |
title_fullStr |
Whole genome scanning and association mapping identified a significant association between growth and a SNP in the IFABP-a gene of the Asian seabass |
title_full_unstemmed |
Whole genome scanning and association mapping identified a significant association between growth and a SNP in the IFABP-a gene of the Asian seabass |
title_sort |
whole genome scanning and association mapping identified a significant association between growth and a snp in the ifabp-a gene of the asian seabass |
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BioMed Central |
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2020 |
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https://scholarbank.nus.edu.sg/handle/10635/174447 |
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1821203833804554240 |